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快速的Icm/Dot T4SS失活可防止变形虫复苏热诱导的嗜肺军团菌活的非可培养状态。

Rapid Icm/Dot T4SS Inactivation Prevents Resuscitation of Heat-Induced VBNC Legionella pneumophila by Amoebae.

作者信息

Schmid Camille, Hilbi Hubert

机构信息

Institute of Medical Microbiology, University of Zürich, Zürich, Switzerland.

出版信息

Environ Microbiol. 2025 Jan;27(1):e70035. doi: 10.1111/1462-2920.70035.

Abstract

Legionella pneumophila, the causative agent of Legionnaires' disease, employs the Icm/Dot Type IV secretion system (T4SS) to replicate in amoebae and macrophages. The opportunistic pathogen responds to stress by forming 'viable but non-culturable' (VBNC) cells, which cannot be detected by standard cultivation-based techniques. In this study, we document that L. pneumophila enters the VBNC state after exposure to heat stress at 50°C for 30 h, at 55°C for 5 h or at 60°C for 30 min, while still retaining metabolic activity and intact cell membranes. Resuscitation of heat-induced VBNC L. pneumophila neither occurred in amoebae nor in macrophages. VBNC L. pneumophila showed impaired uptake by phagocytes, formation of Legionella-containing vacuoles (LCVs), and Icm/Dot-dependent secretion of effector proteins. The T4SS was rapidly inactivated already upon exposure to 50°C for 3-5 h, while the bacteria were still culturable. The Legionella quorum sensing (Lqs)-LvbR network is implicated in VBNC induction, since the ∆lvbR and ∆lqsR mutant strains showed a more pronounced heat sensitivity than the parental strain, and the ∆lqsA mutant was less heat sensitive. Taken together, our results reveal that heat exposure of L. pneumophila rapidly inactivates the Icm/Dot T4SS before the VBNC state is induced, thus impairing resuscitation by amoebae.

摘要

嗜肺军团菌是军团病的病原体,它利用Icm/Dot IV型分泌系统(T4SS)在变形虫和巨噬细胞中复制。这种机会性病原体通过形成“活的但不可培养的”(VBNC)细胞来应对压力,而标准的基于培养的技术无法检测到这些细胞。在本研究中,我们记录到嗜肺军团菌在50°C下暴露30小时、55°C下暴露5小时或60°C下暴露30分钟后进入VBNC状态,同时仍保留代谢活性和完整的细胞膜。热诱导的VBNC嗜肺军团菌在变形虫和巨噬细胞中均未复苏。VBNC嗜肺军团菌显示出被吞噬细胞摄取受损、含军团菌液泡(LCV)形成以及效应蛋白的Icm/Dot依赖性分泌受损。T4SS在暴露于50°C 3至5小时后细菌仍可培养时就迅速失活。军团菌群体感应(Lqs)-LvbR网络与VBNC诱导有关,因为∆lvbR和∆lqsR突变株比亲本菌株表现出更明显的热敏感性,而∆lqsA突变株对热的敏感性较低。综上所述,我们的结果表明,嗜肺军团菌受热后在诱导VBNC状态之前迅速使Icm/Dot T4SS失活,从而损害了变形虫的复苏能力。

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